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首页> 外文期刊>Entropy >Multiscale Compression Entropy of Microvascular Blood Flow Signals: Comparison of Results from Laser Speckle Contrast and Laser Doppler Flowmetry Data in Healthy Subjects
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Multiscale Compression Entropy of Microvascular Blood Flow Signals: Comparison of Results from Laser Speckle Contrast and Laser Doppler Flowmetry Data in Healthy Subjects

机译:微血管血流信号的多尺度压缩熵:健康受试者中激光散斑对比度和激光多普勒血流仪数据的结果比较

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Microvascular perfusion is commonly used to study the peripheral cardiovascular system. Microvascular blood flow can be continuously and non-invasively monitored with laser speckle contrast imaging (LSCI) or with laser Doppler flowmetry (LDF). These two optical-based techniques give perfusion values in arbitrary units. Our goal is to better understand the perfusion time series given by each technique. For this purpose, we propose a nonlinear complexity analysis of LSCI and LDF time series recorded simultaneously in nine healthy subjects. This is performed through the computation of their multiscale compression entropy. The results obtained with LSCI time series computed from different regions of interest (ROI) sizes are examined. Our findings show that, for LSCI and LDF time series, compression entropy values are less than one for all of the scales analyzed. This suggests that, for all scales, there are repetitive structures within the data fluctuations. Moreover, at the largest scales studied, LDF signals seem to have structures that are different from those of Gaussian white noise. By opposition, this is not observed for LSCI time series computed from small ROI sizes.
机译:微血管灌注通常用于研究周围的心血管系统。可以通过激光散斑对比成像(LSCI)或激光多普勒血流仪(LDF)连续且无创地监测微血管血流。这两种基于光学的技术以任意单位给出灌注值。我们的目标是更好地了解每种技术给出的灌注时间序列。为此,我们提出了在9个健康受试者中同时记录的LSCI和LDF时间序列的非线性复杂度分析。这是通过计算其多尺度压缩熵来执行的。检查了从不同关注区域(ROI)大小计算出的LSCI时间序列获得的结果。我们的发现表明,对于LSCI和LDF时间序列,所有分析标度的压缩熵值均小于1。这表明,对于所有尺度,数据波动内都存在重复结构。而且,在最大的研究范围内,LDF信号的结构似乎不同于高斯白噪声。相反,从小ROI大小计算得出的LSCI时间序列中未观察到这一点。

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